Volgen
Masoumeh Rahimi
Masoumeh Rahimi
PhD, Shahed University, Visiting researcher University of Technology Sydney
Geverifieerd e-mailadres voor shahed.ac.ir
Titel
Geciteerd door
Geciteerd door
Jaar
Improvement of timing specifications in second order electronic systems using programmable CMOS Posicast pulse shapers
M Rahimi, MB Ghaznavi-Ghoushchi
20th Iranian Conference on Electrical Engineering (ICEE2012), 309-313, 2012
52012
A low-power and high-speed parallel binary comparator based on inter-stage modified binary tree structure and power-delay improved cell elements
M Rahimi, MB Ghaznavi-Ghoushchi
Microelectronics Journal 88, 37-46, 2019
42019
A 98.1 % CE, 100 mA MLC multi-reference output all digital LDO with fast settling and digital self calibration for DVFS and multi-VDD applications
S Kaedi, MB Ghaznavi-Ghoushchi, M Rahimi
Analog Integrated Circuits and Signal Processing 89 (2), 437-450, 2016
42016
A power efficient multi-level output all digital LDO with fast settling time and built in self calibration for DVFS and multi-VDD applications
S Kaedi, MB Ghaznavi-Ghoushchi, M Rahimi
2015 23rd Iranian Conference on Electrical Engineering, 1276-1281, 2015
32015
A novel generic modulo-2 graph with full set taxonomical conversion to parallel prefix adders
M Rahimi, MB Ghaznavi-Ghoushchi
International Journal of Circuit Theory and Applications 2022 (Early Access …, 2022
22022
A fanout-improved Parallel Prefix Adder with full-swing PTL cells and Graded Bit Efficiency
M Rahimi, MB Ghaznavi-Ghoushchi
Microelectronics Journal 113, 105086, 2021
12021
A Silicon Neuron-based Bio-Front-End for Ultra Low Power Bio-Monitoring at the Edge
TP Shivangi, M Rahimi, G Gargiulo, BJ Kailath, TJ Hamilton
2020 IEEE Symposium Series on Computational Intelligence (SSCI), 3043-3048, 2020
2020
Design and Implementation of an Improved Programmable Circuit for Overshoot Reduction by PosicastTechnique
M Rahimi, MB Ghaznavi-Ghoushchi
صنايع الکترونيک, 2013
2013
Het systeem kan de bewerking nu niet uitvoeren. Probeer het later opnieuw.
Artikelen 1–8